Search results for "Thermal Conductivity"

showing 10 items of 160 documents

Renormalization group analysis of thermal transport in the disordered Fermi liquid

2014

We present a detailed study of thermal transport in the disordered Fermi liquid with short-range interactions. At temperatures smaller than the impurity scattering rate, i.e., in the diffusive regime, thermal conductivity acquires non-analytic quantum corrections. When these quantum corrections become large at low temperatures, the calculation of thermal conductivity demands a theoretical approach that treats disorder and interactions on an equal footing. In this paper, we develop such an approach by merging Luttinger's idea of using gravitational potentials for the analysis of thermal phenomena with a renormalization group calculation based on the Keldysh nonlinear sigma model. The gravita…

PhysicsStrongly Correlated Electrons (cond-mat.str-el)Condensed Matter - Mesoscale and Nanoscale PhysicsSigma modelFOS: Physical sciencesPartition function (mathematics)Renormalization groupCondensed Matter Physics5307. Clean energy3. Good healthElectronic Optical and Magnetic MaterialsGravitationCondensed Matter - Strongly Correlated ElectronsThermal conductivityCorrelation functionQuantum mechanicsQuantum electrodynamicsMesoscale and Nanoscale Physics (cond-mat.mes-hall)Fermi liquid theoryQuantumPhysical Review B
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Multifunctional polyurethane foams with thermal energy storage/release capability

2020

In this work, polyurethane (PU) insulating panels containing different amounts of a microencapsulated paraffin with a nominal melting temperature of 24 °C, used as phase change material (PCM), were produced. The resulting panels behaved as multifunctional materials able to thermally insulate and simultaneously storing/releasing thermal energy near room temperature. The panels were characterized from a microstructural, thermal and mechanical point of view. Viscosity measurements highlighted an increase in the viscosity values of the PU liquid precursors due to the addition of the capsules, and this could lead to some difficulties during the production stages, especially in the mixing and foa…

PolyurethaneThermogravimetric analysisanimal structuresMaterials scienceMechanical propertiesThermal energy storagelaw.inventionViscositychemistry.chemical_compoundThermal conductivityDifferential scanning calorimetryOptical microscopelawPhysical and Theoretical ChemistryComposite materialThermal propertiePolyurethaneWaxSettore ING-IND/11 - Fisica Tecnica AmbientaleCondensed Matter PhysicsFoamPhase-change materialSettore ING-IND/22 - Scienza E Tecnologia Dei Materialichemistryvisual_artvisual_art.visual_art_mediumJournal of Thermal Analysis and Calorimetry
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Laser induced thermal profiles in thermally and optically thin films

1988

The temperature field generated by the weak absorption of a gaussian laser beam in an optically and thermally thin film bounded by two transparent plates is discussed. An analytical solution of the problem is presented together with an algorithm for the numerical integration. The influence of the finite thermal conductivity of the plates is shown in an example.

Quantum opticsMaterials sciencePhysics and Astronomy (miscellaneous)Field (physics)business.industryGeneral EngineeringGeneral Physics and AstronomyLaserlaw.inventionNumerical integrationPhysics::Fluid DynamicsThermal conductivityOpticslawThermalOptoelectronicsThin filmbusinessAbsorption (electromagnetic radiation)Applied Physics B Photophysics and Laser Chemistry
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Transition to ballistic regime for heat transport in helium II

2014

The size-dependent and flux-dependent effective thermal conductivity of narrow capillaries filled with superfluid helium is analyzed from a thermodynamic continuum perspective. The classical Landau evaluation of the effective thermal conductivity of quiescent superfluid, or the Gorter-Mellinck regime of turbulent superfluids, are extended to describe the transition to ballistic regime in narrow channels wherein the radius $R$ is comparable to (or smaller than) the phonon mean-free path $\ell$ in superfluid helium. To do so we start from an extended equation for the heat flux incorporating non-local terms, and take into consideration a heat slip flow along the walls of the tube. This leads f…

Quantum turbulenceGeneral Physics and Astronomychemistry.chemical_elementFOS: Physical sciencesQuantum turbulencelaw.inventionSuperfluidityPhysics::Fluid DynamicsSuperconductivity (cond-mat.supr-con)Ballistic phononsThermal conductivityThermal conductivity; Liquid helium; Quantum turbulence; Micropores; Quantized vortices; Ballistic phononslawMesoscale and Nanoscale Physics (cond-mat.mes-hall)Settore MAT/07 - Fisica MatematicaHeliumLiquid heliumPhysicsMicroporesCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed matter physicsLiquid heliumTurbulenceCondensed Matter - SuperconductivityMicroporeQuantized vorticeschemistryHeat fluxThermal conductivityQuantized vorticeSuperfluid helium-4
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Electron-phonon heat transport in degenerate Si at low temperatures

2004

The thermal conductance between electrons and phonons in a solid state system becomes comparatively weak at sub‐Kelvin temperatures. In this work five batches of thin heavily doped silicon‐on‐insulator samples with the electron concentration in the range of 2.0–16 × 1019 cm–3 were studied. Below 1 K all the samples were in the dirty limit of the thermal electron‐phonon coupling, where the thermal phonon wavelength exceeds the electron mean free path. The heat flow between electrons and phonons is proportional to (T6e–T6ph), where Te (Tph) is the electron (phonon) temperature. The constant of proportionality of the heat flow strongly depends on the electron concentration and its magnitude is…

Range (particle radiation)Heat currentCondensed matter physicsChemistryPhononDopingphononselectron phonon couplingElectron63.20.Kr73.40.SxWavelengthThermal conductivity66.70.+fCondensed Matter::Strongly Correlated ElectronsOrder of magnitude
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Performance Enhancement of Vapour-Compression Refrigeration Systems Using Nanoparticles: An Experimental Study

2021

In recent years, the development and characterization of new refrigerants with higher energetic efficiency have gained considerable interest [1], with a particular emphasis on the energetic performance of suitable replacements. Nanofluids have been proposed as possible alternative due to their role in enhancing the thermophysical proprieties of traditional refrigerants [2]. The comprehensive review in [2] suggests that thermal conductivity of nanofluid increases with temperature and volume concentration, but it is dependent on nanoparticle size distribution; specific heat is also increased if nanoparticles are added to the refrigerant.

RefrigerantNanofluidMaterials scienceThermal conductivitySpecific heatChemical engineeringRefrigerationNanoparticlePerformance enhancementCompression (physics)
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Reducing electric and thermal energy needs in buildings by using innovative envelope materials - Laboratory results of bio-composites embodying tomat…

2018

The life style of building occupants is continuously arising towards conditions that are more comfortable involving, on turn, the growing of the electric energy consumptions for climatization purposes. This calls for the improvement of the efficiencies of equipment along with environmental performance of building materials. Laboratory analyses of samples of mixed materials, utilizing tomato stems harvested in Sicily and Cataluña, have been conducted Thermal conductance and mechanical properties have been detected for different rates of bio-component and inert materials. First results of the thermal properties seem to situate such bio-composites among the insulating building materials, for a…

Renewable thermal insulation materialSettore ING-IND/11 - Fisica Tecnica AmbientaleThermal conductivityUrban agriculture wasteTomato plant stem
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Retrofitting existing buildings by means of innovative envelope components: low-impacting new assemblies

2020

Current policies addressing the energy efficiency of buildings aimed at the control of their overall primary energy demand, require not only that the edifice envelope has to be properly designed to optimize its thermal performances, but also that the eco-friendly properties of the involved building materials have to be properly taken into account, in order of assessing all the associated environmental costs. In fact, the design of envelope structures that are able to realize proper levels of thermal insulation and, in the same time, to employ materials characterized by low environmental impacts, are believed as the most effective strategies to be adopted in the aim of addressing the above-m…

Settore ING-IND/11 - Fisica Tecnica AmbientalePrimary energyComputer sciencebusiness.industry0211 other engineering and technologiesvegetal material02 engineering and technologyRaw materialConstruction engineeringbuilding envelopewaste materialAgricultural wasteThermal insulation021105 building & constructionRetrofittingthermal conductivity021108 energyThermal insulationbusinessBuilding envelopeEnvelope (motion)Efficient energy use2020 IEEE 20th Mediterranean Electrotechnical Conference ( MELECON)
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Insulating Building Components Made from a Mixture of Waste and Vegetal Materials: Thermal Characterization of Nine New Products

2021

Nowadays, energy efficiency and sustainability are the fulcra of building policies. These policies promote the use of new technologies and materials that can reduce the primary energy involved and the environmental costs of construction, guarantying at the same time a high level of comfort for the building’s occupants. Synergy between previous construction techniques and the use of new materials should be pursued by employing materials with a low environmental impact and optimal thermal insulation properties. Within this framework, new materials derived from the agriculture sector, and waste or recycling products from the industrial/agricultural sectors have been studied. The aim of this pa…

Settore ING-IND/11 - Fisica Tecnica AmbientaleThermal conductivity measurementEnvironmental effects of industries and plantsRenewable Energy Sustainability and the EnvironmentGeography Planning and DevelopmentTJ807-830vegetal materialManagement Monitoring Policy and LawTD194-195thermal conductivity measurements; building envelope sustainability; waste material; vegetal material; environmentally friendly compositesRenewable energy sourceswaste materialEnvironmental sciencesbuilding envelope sustainabilitythermal conductivity measurementsGE1-350environmentally friendly compositesSustainability; Volume 13; Issue 24; Pages: 13820
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Effect of sheep wool fibres on thermal-insulation and mechanical properties of cement matrix

2015

The use of sheep wool as reinforcement of cement in order to produce mortar or plaster involves several advantages for environment and energy. Moreover, in several regions it is treated as a waste and, consequently, its employ is characterized by low cost. Aim of this paper is to evaluate the influence of wool fibres on thermal conductivity and mechanical properties of cement. The samples were prepared using wool fibres, obtained from a breed of Sicilian sheep, with three different length (i.e. 1 mm, 6 mm and 20 mm). Moreover, in order to evaluate the influence of fibre content, the samples were prepared by varying the fibres weight fraction up to maximum level. The thermal conductivity of …

Settore ING-IND/22 - Scienza E Tecnologia Dei MaterialiSettore ING-IND/11 - Fisica Tecnica AmbientaleThermal conductivityMechanical properties Cement mortarWool fibre
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